ML17321A866
| ML17321A866 | |
| Person / Time | |
|---|---|
| Site: | Cook |
| Issue date: | 08/23/1985 |
| From: | NRC |
| To: | |
| Shared Package | |
| ML17321A867 | List: |
| References | |
| NUDOCS 8509030226 | |
| Download: ML17321A866 (3) | |
Text
AZCQNISTRATIVE CONTROLS 6.9.1.3 Startup reports shall be submitted within (1) 90 days following completion of the startup test program, (2) 90'days following resumption or commencement of corrmercial power operation, or (3) 9 months follow-ing initial criticality, whichever is earliest:
If the Startup Report does not cover all three events (i.e., initial criticality, completion of startup test program, and resumption or cornrrencement of corrmercial power operation),
supplementary reports shall be submitt d at least every three months until all three events have been completed.
1/
ANNUAL kEPORXS
~ C 6.9.1.4 Annual reports covering thc activicies of thc unit as described bclov for thc previous calendar year shall be submitted prior co Karch 1 of each year.
The initial report shall bc submitted prior to Harch 1 of the year following initial criticality.
6.9.1.5 Reports required on an annual basis shall include:
a ~
A tabulation on an annual basis of thc number of station, utility and other personnel (including contractors) receiving exposures greater than 100 arem/yr and their associated man ram exposure according to vork and gob
- functions, c.g.,
reactor operations and surveillance, inservicc inspection, routine maintenance, special aaincenance (describe maintenance),
vasce processing, and refueling.
Th>>
dose assignmcnt to various duty functions may bc estimates based on pockc t doe Quater, TLD, or film badg e ac asuremcnt s
Small exposures totalling less than 20I of the individual tocal dose need not be accounted for.
In thc aggregate, at least 80I of chc tbtal vholc body dose received from external sources shall bc-assigned to specific ma)or cwork functions.
b.
The complete results of stcam generator tube inservice inspections performed during the report period (rcferencc Specification 4.4.5.S.b).
C ~
Documentation of all challenges to the pressurizer pover operated relief valves (PORVs) or safety valves.
1 A single submittal may be made for a multiple unit station.
The submittal should combine those sections that arc common co all units at thc station.
2 This tabulation supplements thc requirements of 20.407 of 10 CTR Part 20.
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D. c. Coox - UNIT 1
6-15 Amendment No.
77
I R
PAULE 4.3-1 REACTOR TRIP SYSTEM IHSTRUHEHTATIOH SURVEILLAHCE BE UIREHEHTS FUHCTIONAL UHIT CllANNEIR CIIANHEL CHECK CALIBRATION CllhNHEL FUNCTIONAL TEST NODES IN WIIICII SURVEILLANCE RE UIRED Hanual Reactor Trip A.
Shunt Trip Function B.
Uncfervoltage Trip Function N.A.
N.A.
N. A.
N.A.
S/U (1)
S/U (I )
N.h.
H.A.
2.
Power Range, Neutron Flux D(2), N(3) and Q(6) 3.
Power
- Range, Neutron Flux, High Positive Rate N.A.
~ R (6) 1, 2
4.
5.
Power Range, Neutron Flux, lligh Negative Bate Intermediate
- Range, Neutron Flux N.h.
(6)
R (6)
S/U (1) 1, 2
1, 2 and 6.
Source
- Range, Neutron Flux 7.
Overtemperature 5T 8.
Overpower h T R(6)
M and S/lJ(1) 2 (7),
3 (7),
4 and g
1, 2
1, 2
~
~
9.
Pressurizer Pressure Imw 10.
Pressurizer Pressure )ligh 11.
Pressurizer Water Level--lligh
'P 12.
Loss of Flow - Single Inop 1,
2 1,
2 1,
2
I
~ I
~
~
I'
TABLE 4. 3-1 REACTOR TRIP SYGTLA INSTR(IHENTATION SURVEII.LAN(:E l(E UIRFHEN'l'5 FUNCTIONAL ljNlT 4%
Hanual Rcactur Trip A.
Shunt Trip Furrction B.
Und(rvoltage Trip Function
- CHANNEI,
('.lIE('K N.A.
N.AI CHANNLl.
CAl.lBkATI()N N.h.
CllANNEl.
FUN(:TIONAL TEST S/U(l)
S/U ( I )
HADES IN HHlCH SURVl I I.LANCE
~
N.A.
N.A.
2 ~
Pmrer
- Range, Neutron Flux U(2), H{3) and Q(6) l, 2
4 ~
Pover
- Range, Neutron Flux, High Positive Rate P(e'er
- Range, Neutron l"lux, High Negative Rate N.A.
N.A.
R (6)
R. (6) 1, 2
1, 2
5.
Intermediate
- Range, Neutron Flux R(e)
S/U (I )
1, 2 and 6.
7.
8.
9.
tr 10.
11.
Z Source
- Range, Neutron Flux Overtcmlreraturc 5 T Overpower D T Pressurizer Pressure--low Pressurizer Prcsrrure lliglr Pressurizer Mater Lev<<l--Higlr less of Flo~
Single loop w{e)
I, 2
1, 2
H II 2
2 I,
2 H and S/U(l) 2(7), 3{7),
4 and 5
~